Chen Dayong, Chang Chia-Chih, Cooper Beth, Silvers Angela, Emrick Todd, Hayward Ryan C
Department of Polymer Science and Engineering, University of Massachusetts Amherst , 120 Governors Drive, Amherst, Massachusetts 01003, United States.
Biomacromolecules. 2015 Oct 12;16(10):3329-35. doi: 10.1021/acs.biomac.5b00991. Epub 2015 Sep 23.
Highly efficient photo-cross-linking reactions enable numerous applications in biomaterials. Here, a photopatternable biodegradable aliphatic polyester with benzophenone pendent groups was synthesized by copper-catalyzed alkyne-azide cycloaddition, affording polyesters that undergo UV-induced cross-linking to yield photopatterned films. Using this material, a self-folding multilayer structure containing polyester/hydrogel bilayer hinges was fabricated. Upon swelling of the hydrogel layer, the construct folds into a triangular tube, which subsequently unfolds due to lipase-catalyzed degradation of the polyester layer. The ability to precisely design such degradation-induced structural changes offers potential for biomaterials and medical applications, such as evolving and responsive 2D and 3D tissue engineering scaffolds.
高效的光交联反应使生物材料有众多应用。在此,通过铜催化的炔-叠氮环加成反应合成了一种带有二苯甲酮侧基的可光图案化的可生物降解脂肪族聚酯,得到的聚酯可通过紫外线诱导交联形成光图案化薄膜。利用这种材料,制备了一种包含聚酯/水凝胶双层铰链的自折叠多层结构。水凝胶层膨胀时,该结构折叠成三角管,随后由于脂肪酶催化聚酯层降解而展开。精确设计这种降解诱导的结构变化的能力为生物材料和医学应用提供了潜力,例如用于不断演变和响应的二维和三维组织工程支架。